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控制组织工程心脏构建体的细胞组织

Controlling the cellular organization of tissue-engineered cardiac constructs.

作者信息

Gonen-Wadmany Maya, Gepstein Lior, Seliktar Dror

机构信息

Department of Biomedical Engineering, Technion IIT, Haifa, Israel.

出版信息

Ann N Y Acad Sci. 2004 May;1015:299-311. doi: 10.1196/annals.1302.025.

Abstract

There are currently no effective treatments to restore the cardiac muscle lost because of ischemia for the millions of people who suffer heart attacks annually. Cell therapy procedures have emerged as novel therapeutic strategies for treatment of heart failure after myocardial infarction but have been hampered by the lack of adequate cell sources of cardiomyocytes and by the inability to integrate cell grafts into cardiac muscle. A cardiac patch composed of organized and functional cardiomyocytes could drastically enhance the efficacy of this important clinical approach. Here, we report our ongoing efforts to develop a bioartificial cardiac muscle capable of synchronized multidirectional contraction within a three-dimensional hydrogel scaffold. Neonatal rat cardiomyocytes, smooth muscle cells, and reconstituted polymeric collagen enriched with growth factors and hormones are used. A bioreactor system is used to impart precise strains onto the developing tissue constructs in vitro. The results demonstrate that cell-mediated collagen compaction is significantly enhanced by strain preconditioning, resulting in a more favorable cellular organization. Furthermore, the results demonstrate that strain stimulation guides cellular orientation in the direction of applied strain (i.e., in the circumferential direction). Hence, we demonstrate the importance of mechanical preconditioning as a means of promoting the in vitro development of engineered cardiac muscle for use with myocardial regeneration therapies.

摘要

对于每年数百万遭受心脏病发作的人来说,目前尚无有效的治疗方法来恢复因缺血而损失的心肌。细胞治疗方法已成为治疗心肌梗死后心力衰竭的新型治疗策略,但受到缺乏足够的心肌细胞来源以及无法将细胞移植物整合到心肌中的阻碍。由有组织且有功能的心肌细胞组成的心脏补片可大幅提高这一重要临床方法的疗效。在此,我们报告我们正在进行的努力,即在三维水凝胶支架内开发一种能够同步多向收缩的生物人工心肌。使用新生大鼠心肌细胞、平滑肌细胞以及富含生长因子和激素的重组聚合胶原蛋白。利用生物反应器系统在体外对正在发育的组织构建体施加精确的应变。结果表明,通过应变预处理可显著增强细胞介导的胶原压实,从而形成更有利的细胞组织。此外,结果表明应变刺激引导细胞沿施加应变的方向(即圆周方向)定向。因此,我们证明了机械预处理作为促进用于心肌再生治疗的工程化心肌体外发育手段的重要性。

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